Journalartikel

Hadronic decays of the (pseudo-)scalar charmonium states ηc and χc0 in the extended Linear Sigma Model


AutorenlisteEshraim, Walaa I.; Fischer, Christian S.

Jahr der Veröffentlichung2018

ZeitschriftThe European Physical Journal A

Bandnummer54

Heftnummer8

ISSN1434-6001

eISSN1434-601X

DOI Linkhttps://doi.org/10.1140/epja/i2018-12569-3

VerlagSpringer


Abstract
We study the phenomenology of the ground-state (pseudo-)scalar charmonia eta(c) and chi(c0) in the framework of a U(4)(r) x U(4)(l) symmetric linear sigma model with (pseudo-) scalar and (axial-) vector mesons. Based on previous results for the spectrum of charmonia and the spectrum and (OZI-dominant) strong decays of open charmed mesons, we extend the study of this model to OZI-suppressed charmonia decays. This includes decays into "ordinary" mesons but also particularly interesting channels with scalar-isoscalar resonances f(0)(1370), f(0)(1500), f(0)(1710) that may include sizeable contributions from a scalar glueball. We study the variation of the corresponding decay widths assuming different mixings between glueball and quark-antiquark states. We also compute the decay width of the pseudoscalar eta(c) into a pseudoscalar glueball. In general, our results for decay widths are in reasonable agreement with experimental data where available. Order of magnitude predictions for as yet unmeasured states and channels are potentially interesting for BESIII, Belle II, LHCb as well as the future PANDA experiment at the FAIR facility.



Zitierstile

Harvard-ZitierstilEshraim, W. and Fischer, C. (2018) Hadronic decays of the (pseudo-)scalar charmonium states ηc and χc0 in the extended Linear Sigma Model, The European Physical Journal A, 54(8), Article 139. https://doi.org/10.1140/epja/i2018-12569-3

APA-ZitierstilEshraim, W., & Fischer, C. (2018). Hadronic decays of the (pseudo-)scalar charmonium states ηc and χc0 in the extended Linear Sigma Model. The European Physical Journal A. 54(8), Article 139. https://doi.org/10.1140/epja/i2018-12569-3



Schlagwörter


F(0)(1370)F(2)(1270)LATTICEMESONSPSEUDOSCALAR GLUEBALLSCALAR


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